Multiwavelength Campaign on Mrk 509 X. Lower limit on the distance of the absorber from HST COS and STIS spectroscopy
N. Arav, D. Edmonds, B. Borguet, G. A. Kriss, J. S. Kaastra, E. Behar,, S. Bianchi, M. Cappi, E. Costantini, R. G. Detmers, J. Ebrero, M. Mehdipour,, S. Paltani, P. O. Petrucci, C. Pinto, G. Ponti, K. C. Steenbrugge, and C. P., de Vries

TL;DR
This study uses multiwavelength data and photoionization modeling to constrain the distance of outflowing gas in Mrk 509, finding it is at least 100-200 parsecs from the central black hole, consistent with X-ray estimates.
Contribution
It introduces a method that combines lightcurve behavior and measurement quality to set lower limits on absorber distances in AGN outflows.
Findings
Absorbers are located at least 100-200 pc from the nucleus.
Small ionic column density variations imply large distances.
Method improves traditional timescale analysis by considering lightcurve physics.
Abstract
Active Galactic Nuclei often show evidence of photoionized outflows. A major uncertainty in models for these outflows is the distance () to the gas from the central black hole. In this paper we use the HST/COS data from a massive multi-wavelength monitoring campaign on the bright Seyfert I galaxy Mrk 509, in combination with archival HST/STIS data, to constrain the location of the various kinematic components of the outflow. We compare the expected response of the photoionized gas to changes in ionizing flux with the changes measured in the data using the following steps: 1) We compare the column densities of each kinematic component measured in the 2001 STIS data with those measured in the 2009 COS data; 2) We use time-dependent photionization calculations with a set of simulated lightcurves to put statistical upper limits on the hydrogen number density that are consistent with the…
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Taxonomy
TopicsAstrophysical Phenomena and Observations · Galaxies: Formation, Evolution, Phenomena
